Actin depolymerizing factor (ADF), highly conserved in all eukaryotic cells, is a low molecular mass of actin-binding protein, which plays a key role in modulating the polymerizing and depolymerizing of the actin filaments. Four cDNAs (designated GhADF2, GhADF3, GhADF4, and GhADF5, respectively) encoding ADF proteins were isolated from cotton (Gossypium hirsutum) fiber cDNA library. GhADF2 cDNA is 705 bp in length and deduces a protein with 139 amino acids. GhADF3 cDNA is 819 bp in length and encodes a protein of 139 amino acids. GhADF4 cDNA is 804 bp in length and deduces a protein with 143 amino acids. GhADF5 cDNA is 644 bp in length and encodes a protein of 141 amino acids. The molecular evolutionary relationship of these genes was analyzed by means of bioinformatics. GhADF2 is closely related to GhADF3 (99% identity) and PetADF2 (89% identity). GhADF4 is closely related to AtADF6 (78% identity), and GhADF5 is closely related to AtADF5 (83% identity). These results demonstrated that the plant ADF genes are highly conserved in structure. RT-PCR analysis showed that GhADF2 is predominantly expressed in fiber, whereas, GhADF5 is mainly expressed in cotyledons. On the other hand, it seems that GhADF3 and GhADF4 have no tissue specificity. Expression levels of different ADF genes may vary considerably in the same cell type, suggesting that they might be involved in regulating tissue development of cotton and the each ADF isoform may diverge to form the functional difference from the other ADFs during evolution.
从棉花cDNA文库中分离了3个编码富含甘氨酸蛋白(glycine-rich proteins,GRPs)的基因,分别命名为GhGRP1、GhGRP2、GhGRP3.推断的编码蛋白质的氨基酸序列都富含甘氨酸,甘氨酸含量超过40%.而且GhGRP1和GhGRP2蛋白质序列同源性高达99%,仅在C末端有1个氨基酸残基(Arg/Pro)的差别.这3个蛋白在富含甘氨酸区相互显示较高的同源性,GhGRP1与GhGRP2达到100%,而GhGRP2与GhGRP3达到45·1%,但它们与基因数据库中其它蛋白质的同源性很低.根据结构域的组织特点,将GhGRP1和GhGRP2归为C端富含半胱氨酸结构域(C-cysteine-rich)类GRP,将GhGRP3归为N端有信号肽的GRP.GhGRP1和GhGRP2都含有12个GGX(此处X代表P/W/F)重复,GhGRP3含有22个GGX(此处X代表A/F/V/L/T/P)重复.此外,它们还含有不同数量GX,GGGX等的重复.实时RT-PCR分析表明,GhGRP1在花药中优势表达.GhGRP2在10dpa(day post anthesis)胚珠中表达最强,10dpa纤维和下胚轴次之,而在花药、根和花瓣中表达量相对较低.GhGRP3在花药,根和下胚轴中表达量较高,而在子叶,花瓣、纤维和胚珠中表达较低.上述结果表明,GhPRP基因家族的不同成员可能分别在棉花不同组织细胞的发育过程中发挥作用.